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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Summer pruning reduces whole-canopy carbon fixation and transpiration in apple trees
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Summer pruning reduces whole-canopy carbon fixation and transpiration in apple trees

机译:夏季修剪可减少苹果树的全冠碳固着和蒸腾作用

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摘要

Canopy size control is one of the major purposes of summer pruning. However, reducing canopy size might also result in less light interception, consequently decreasing canopy photosynthetic efficiency and carbohydrate production, which might lead tothe imbalance of carbohydrate supply and fruit demand. To document the effectiveness of summer pruning on canopy control and the impact on canopy gas exchange, pruning treatments at four levels of intensity (unpruned, light, moderate, and severe) were carried out on mature 'Empire'/M.9 slender spindle apple trees (Malus domestica Borkh.) on 30 July 1998 and 4 August 1999. Changes in canopy leaf area after summer pruning were estimated. Canopy net carbon exchange rate (NCER) and canopy transpiration before and after summer pruning were monitored. Canopy growth was suppressed by summer pruning and the post-pruning regrowth was insignificant. Canopy NCER was reduced in proportion to the amount of leaf area removed by summer pruning. The result suggests that commercial pruning intensity similar to the moderate to severe treatments in this study could cause a significant reduction in canopy NCER and carbohydrate production. In addition, canopy transpiration was reduced in proportion to pruning intensity.Lower water consumption and improved water status during the growing season after summer pruning might benefit fruit growth and relieve the potential detriment due to carbohydrate shortage.
机译:控制树冠的大小是夏季修剪的主要目的之一。然而,减少冠层的大小也可能导致较少的光拦截,因此降低冠层的光合效率和碳水化合物的生产,这可能导致碳水化合物供应和水果需求的不平衡。为了记录夏季修剪对冠层控制的有效性以及对冠层气体交换的影响,对成熟的“ Empire” /M.9细长纺锤形苹果进行了四种强度(未修剪,轻度,中度和重度)修剪处理。分别于1998年7月30日和1999年8月4日采伐树木(Malus domestica Borkh。)。估计夏季修剪后树冠叶面积的变化。监测夏季修剪前后的冠层净碳交换率(NCER)和冠层蒸腾作用。夏季修剪抑制了冠层的生长,修剪后的再生长微不足道。冠层NCER的减少与夏季修剪去除的叶子面积成比例。结果表明,与本研究中的中度至重度治疗相似的商业修剪强度可能会导致冠层NCER和碳水化合物产生的显着减少。此外,冠层蒸腾量与修剪强度成正比关系。夏季修剪后生长季节中较低的耗水量和改善的水分状况可能有益于果实生长并减轻因碳水化合物短缺而造成的潜在危害。

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